Structureconcept
Structural system selection by material
One-line orientation
Choosing a structural system is a match between required span/height and the material that delivers it economically — the exam tests whether you can pair a program to the right system.
Key points
- Light wood frame — common for single-family and low-rise residential or commercial work. Small members simplify MEP routing; members are often spaced at 16 or 24 inches on center, and I-joists or trusses extend spans. Wood is combustible, but tested assemblies can still achieve a fire-resistance rating. Height and area limits depend on the complete construction type.
- Heavy / mass timber — mid- to high-rise; larger members with better fire resistance. Solid beams/girders 4–12” thick to ~32 ft; glulam 3–75” deep to ~65 ft; CLT 3–12” thick to ~60 ft lengths.
- Load-bearing masonry — primarily wall construction, with floors and roofs carried by other systems. CMU is generally faster and more economical than brick. A cavity wall commonly uses a structural backup, a drained air space, and a nonstructural veneer tied to the backup.
- Cast-in-place (site-cast) concrete — columns, walls, beams, slabs. Needs formwork + curing; post-tensioning adds strength/span. Columns min. ~10” square / 12” round; beams/girders to ~90–100 ft; slabs ~30 ft (one-way) to ~100 ft (two-way post-tensioned).
- Precast concrete — fast-track, pre-stressed/pre-cured; shallower spanning members; economical on uniform grids. Beams/girders (rect., T, L) to ~75 ft; double-tees to ~90 ft, single-tees to ~110 ft; columns use corbels to support beams.
- Structural steel:
- Fire behavior: cold-formed steel is noncombustible, but members alone do not create a fire-rated assembly; hot-rolled steel often needs protection.
- Common column shapes: W and HSS.
- Preliminary spans: beams/girders 25–40 ft; open-web joists about 90 ft for floors and 140 ft for roofs.
Structural systems — compare members on one span scale
Every row uses the same 0–140 ft scale; gray bands are stated ranges, while labeled dots are single maximum spans.
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Scroll horizontally to explore
- blue band = longest reach
- gray band = stated span range
- dot = stated maximum
Trap: light wood frame and load-bearing masonry are not losing a span race; select them by low-rise scale or wall/height logic.
Confusions / comparison
| System | Typical economical span | Height / scale fit | Notes |
|---|---|---|---|
| Light wood frame | Members 16”/24” o.c.; trusses/I-joists for longer spans | Low-rise | Combustible; rated assemblies are possible; height/area depend on construction type |
| Heavy / mass timber | Glulam ~65 ft · CLT ~60 ft · beams ~32 ft | Mid- to high-rise | Better fire resistance than light frame |
| Load-bearing masonry | Walls (spanning via other systems) | Brick to ~20 stories | Cavity wall = CMU + air space + veneer |
| Cast-in-place concrete | Beams ~90–100 ft · slabs 30–100 ft | Any | Formwork + curing; post-tension for span |
| Precast concrete | Beams ~75 ft · double-tee ~90 ft · single-tee ~110 ft | Fast-track, uniform grids | Pre-cured; shallower members |
| Structural steel | Beams 25–40 ft · open-web joist 90 ft (floor) / 140 ft (roof) | Any, incl. long-span | Hot-rolled needs fire protection |
Related
→ Column buckling & K-values (this topic): why steel HSS/W columns resist buckling · End connections (this topic): how the system’s joints behave · Enclosure control layers (Enclosure): how the chosen structure carries the cladding.
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